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SAIDI Constrained Economic Planning and Utilization of Central Storage in Rural Distribution Networks

机译:SAIDI限制了农村配电网中央存储的经济规划和利用

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This paper forms a framework for allocating a central electric energy storage (EES) in discrete communities, forming as segmentations along the rural feeders, where the installation of cross connects are not economic or even feasible. In this framework, EESs that centrally can be installed in each community are owned and operated by an aggregator/retailer, trading bidirectional energy transactions with both the grid and the customers. The objective is to find optimum investment in storage capacity in rural feeders for minimum annual energy purchase cost using energy arbitrage opportunities, while maintaining an allowable level of system average interruption duration index (SAIDI). As a part of EES sizing and siting optimization in this approach, annual hourly network data are utilized for charge/discharge scheduling and constraint, and for system reliability assessment-using the k-means clustering technique. This method is applied to a rural network in Queensland, Australia, and the results are examined to show the effectiveness of this method.
机译:本文形成了在离散社区中分配中央电能​​存储(EES)的框架,形成为沿农村馈线的分段,在这种情况下,交叉连接的安装既经济又不可行。在此框架中,可以在每个社区中集中安装的EES由聚合器/零售商拥有和运营,并与电网和客户进行双向能源交易。目的是寻找最佳的农村支线存储容量投资,以利用能源套利机会使年度能源购买成本最低,同时保持系统平均中断持续时间指数(SAIDI)的允许水平。作为EES规模和选址优化的一部分,使用k均值聚类技术将年度每小时网络数据用于充电/放电调度和约束,以及系统可靠性评估。将该方法应用于澳大利亚昆士兰州的农村网络,并对其结果进行了检验,以表明该方法的有效性。

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